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Power Optimization in Battery Based Wireless Sensor Nodes
Duration:
Smart Gate Driver for BLDC Motors
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Digital Power Supply Design Workshop
Traffic Monitoring with mmWave: A TI Design Walkthrough (Europe/Americas Region)
DRV835x smart gate driver family
C2000 InstaSPIN: From Evaluation to Production - What is FOC?
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Engineer It: Understanding basic sensored BLDC motor operation
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C2000 MCU DesignDRIVE Fast Current Loop
This section contains training on DesignDRIVE current loop control innovations.
Design considerations for EMI, EMC immunity and isolation requirements in industrial drives
This training outlines the system requirements for EMC immunity, EMI and isolation when designing a variable-speed drive. A brief overview is given on the corresponding IEC standards with the test requirements and pass criterion. Subsystem hardware design examples are shown leveraging TI reference designs for an interface to absolute digital encoders and dual port Gigabit Ethernet to pass EMC immunity and EMI, and a 3-phase inverter with reinforced isolated IGBT gate drivers to meet isolation and common mode transient immunity.
Introduction to Isolation
This section of training videos will discuss what isolation is, the three types of isolators, and how they achieve isolation. This course teaches the fundamentals of isolation, including the basics of the technologies used by many different Texas Instruments isolation products. Then, build on the previous lesson by learning the most common isolation parameters, that are important to system designs and selecting the correct isolator product.
Isolated Amplifiers and Modulators
Isolated Gate Drivers
Display University
Display Fundamentals
LED Backlight Design Considerations
High Dynamic Range (HDR) Displays
mmWave Training Series
The mmWave training curriculum provides foundational content and hands on examples for you to learn the fundamentals of FMCW technology and mmWave sensors, and start development quickly. TI's portfolio of mmWave sensors features the AWR automotive radar sensor family and the IWR industrial mmWave sensor family, which are intended to be used for detecting range, velocity and angle of objects. Learn more about the silicon, tools, software and some of the applications for both mmWave families in the mmWave training series.
Introduction to mmWave sensing: FMCW radars
New to mm-wave sensing? This series of five short videos provides a concise yet in-depth introduction to sensing using FMCW radars.